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首页> 外文期刊>IPTEK The Journal for Technology and Science >3-D Numerical Study of CFB 110 MW: Fluidization in Furnace and Cyclone with Loads And Air Combustion Variation
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3-D Numerical Study of CFB 110 MW: Fluidization in Furnace and Cyclone with Loads And Air Combustion Variation

机译:CFB 110 MW的3-D数值研究:炉膛和旋风分离器中的流化以及负荷和空气燃烧变化

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Circulating Fluidized Bed (CFB) Boiler has advantages when uses low rank coal compared to Pulverized Boiler. It will be less operational cost but it has greater risk in degradation because of sands material inside the process. Air combustion between primary air and secondary air is one importance parameter that influence fluidization of CFB. Numerical simulation of commercial CFD was used with Eulerian multiphase model implemented to analyzed sand volume of fraction, air and sand velocity including distribution of pressure around furnace. It was used 55%-45% air combustion ratio of primary and secondary air as reference when boiler operated at 63% and 100% based on operation performance of CFB and then it was simulated with additional variation of air combustion ratio with 50%-50%. Simulation of 110% load was added using all of variation of air combustion. The simulation showed that fluidization with air combustion ratio 50%-50% and 55%-45% executed well when operated at 63%. Meanwhile, fluidization 100% and 110% with all those air combustion ratios would cause a great number of sands entered inlet cyclone and higher sands and air velocities.
机译:与粉煤锅炉相比,使用低阶煤时循环流化床(CFB)锅炉具有优势。这将减少运营成本,但由于工艺内部存在砂料,因此具有更大的降解风险。一次空气和二次空气之间的空气燃烧是影响CFB流化的一个重要参数。利用商业CFD的数值模拟和欧拉多相模型,分析了馏分的砂体积,空气和砂速,包括炉子周围的压力分布。根据CFB的运行性能,当锅炉分别以63%和100%运行时,以一次空气和二次空气的55%-45%空气燃烧比作为参考,然后在50%-50的空气燃烧比额外变化的情况下进行模拟。 %。使用空气燃烧的所有变化添加了110%负载的模拟。模拟显示,当以63%运行时,空气燃烧率50%-50%和55%-45%的流化效果很好。同时,在所有这些空气燃烧比率下,流化率分别为100%和110%会导致大量砂子进入旋风分离器,并且砂子和风速更高。

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